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首页> 外文期刊>Organic Geochemistry: A Publication of the International Association of Geochemistry and Cosmochemistry >Micrometer scale imaging of sedimentary climate archives - Sample preparation for combined elemental and lipid biomarker analysis
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Micrometer scale imaging of sedimentary climate archives - Sample preparation for combined elemental and lipid biomarker analysis

机译:沉积气候档案的千分尺刻度成像 - 组合元和脂质生物标志物分析的样品制备

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Mass spectrometry imaging (MSI) can be used for the mu m scale mapping of target molecules on intact sample surfaces. Recently we demonstrated that MSI of non-disturbed sediments can be used for paleoenvironmental studies; using matrix-assisted laser desorption/ionization coupled to Fourier transform-ion cyclotron resonance-mass spectrometry we visualized the spatial distributions of archaeal glycerol dibiphytanyl glycerol tetraether (GDGT) lipids. There is a pressing need for implementing sample preparation procedures that allow exploiting the full potential of sediment MSI. Here we present a suite of sample preparation steps, optimized for the analysis of GDGTs in marine sediments. It considers the crucial requirements for successful MSI and optional combination with elemental imaging via micro X-Ray Fluorescence Spectroscopy (mu-XRF). Preservation of the sediment's spatial distribution is achieved with freeze-drying and subsequent embedding in a mixture of gelatin and carboxymethyl cellulose. This enables sectioning the sample into sequential slices from 20 to 500 mu m in thickness. Thinner sections showed enhanced signal intensity in MSI, but elemental mapping by mu-XRF is more accurate for thicker sections; 100 mu m thick slices provide satisfactory results for both analyses and are recommended for congruent elemental and biomarker imaging. When applied to the uppermost similar to 5 cm of marine sediment from a Santa Barbara Basin box core, the optimized sample preparation yields reproducible ultra-high-resolution GDGT records from sequential slices, thus demonstrating the robustness of the method. Congruent mu-XRF results aid the establishment of a contextual framework regarding supply of terrigenous and marine detritus as well as the assignment of molecular data to annual layers. (C) 2018 The Author(s). Published by Elsevier Ltd.
机译:质谱成像(MSI)可用于完整样品表面上的靶分子的MU M比例映射。最近,我们证明了非受扰沉积物的MSI可用于古环境研究;使用耦合到傅里叶变换离子回转共振谱系的矩阵辅助激光解吸/电离,我们可视化氨基甘油二苯酞二烷基甘油四醚(GDGT)脂质的空间分布。有需要实现允许利用沉积物MSI的全部潜力的样品制备程序。在这里,我们提供了一套样品制备步骤,优化了海洋沉积物中GDGTS的分析。它考虑了通过微X射线荧光光谱(MU-XRF)的成功MSI和与元素成像的可选组合的关键要求。通过冷冻干燥和随后嵌入明胶和羧甲基纤维素的混合物中,实现了沉积物的空间分布的保存。这使得样品厚度为20至500μm的顺序切片。较薄部分显示了MSI中增强的信号强度,但MU-XRF的元素映射对于较厚的部分更准确; 100 Mu M厚切片提供两种分析的令人满意的结果,并建议用于全体元素和生物标志物成像。当从Santa Barbara盆盒芯中施加到类似于5厘米的海洋沉积物时,优化的样品制备产生来自连续切片的可重复的超高分辨率GDGT记录,从而证明了该方法的稳健性。一致的MU-XRF结果有助于建立有关犯罪和海洋碎屑的供应以及分子数据向年度层的分配。 (c)2018提交人。 elsevier有限公司出版

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